ETHYLENE RESPONSE FACTOR 34 promotes secondary cell wall thickening and strength of rice peduncles

Author:

Zhang Jiao1ORCID,Liu Zengyu1,Sakamoto Shingo2ORCID,Mitsuda Nobutaka2ORCID,Ren Anran1,Persson Staffan134ORCID,Zhang Dabing15ORCID

Affiliation:

1. School of Life Sciences and Biotechnology, Joint International Research Laboratory of Metabolic and Developmental Sciences, Shanghai Jiao Tong University , Shanghai, 200240, China

2. Bioproduction Research Institute, AIST , Tsukuba, Japan

3. Department of Plant & Environmental Sciences (PLEN), University of Copenhagen , Frederiksberg, 1870, Denmark

4. Copenhagen Plant Science Center (CPSC), University of Copenhagen , Frederiksberg, 1870, Denmark

5. School of Agriculture, Food, and Wine, University of Adelaide , Urrbrae, 5064, Australia

Abstract

Abstract Cellulose and lignin are critical cell wall components for plant morphogenesis and adaptation to environmental conditions. The cytoskeleton supports cell wall deposition, but much of the underpinning regulatory components remain unknown. Here, we show that an APETALA2/ETHYLENE RESPONSE FACTOR (ERF) family transcription factor, OsERF34, directly promotes the expression of the actin- and microtubule-binding protein Rice Morphology Determinant (RMD) in rice (Oryza sativa) peduncles. OsERF34 and RMD are highly expressed in sclerenchymatous peduncle cells that are fortified by thick secondary cell walls (SCWs) that provide mechanical peduncle strength. erf34 and rmd-1 mutants contained lower cellulose and lignin contents and thinner SCWs, while ERF34 over-expressing (OE) lines maintained high cellulose and lignin content with thicker SCWs. These characteristics impacted peduncle mechanical strength, that is, reduced strength in erf34 and rmd-1 and increased strength of ERF34 OE plants. Taken together, our results demonstrate that the OsERF34-RMD cascade positively regulates SCW synthesis and mechanical strength in rice peduncles, which is important for yield, and provide a potential guide for improved peduncle breeding efforts in rice.

Funder

National Natural Science Foundation of China

Startup Fund for Young Researcher

Australian Research Council (ARC) Discovery

Villum Investigator

Danmarks Grundforsknings Fond (DNRF) Chair

Novo Nordisk Laureate

Novo Nordisk Emerging Investigator

Lundbeck foundation (Experiment

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Genetics,Physiology

Reference67 articles.

1. Understanding and reducing lodging in cereals;Berry;Adv Agron,2004

2. Development of a model of lodging for barley;Berry;J Agron Crop Sci,2006

3. An AP2/ERF transcription factor ERF139 coordinates xylem cell expansion and secondary cell wall deposition;Bernard;New Phytologist,2019

4. A katanin-like protein regulates normal cell wall biosynthesis and cell elongation;Burk;Plant Cell,2001

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